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number the image of dna replication below in order of events. place the…

Question

number the image of dna replication below in order of events.
place the steps of dna replication in order from beginning to end.
_____ two new identical semi - conservative strands of dna are created
_____ dna polymerase attaches free floating nucleotides to their open complementary base.
_____ the hydrogen bond between nitrogen bases is broken and dna is unzipped by the enzyme helicase.
_____ the enzyme ligase then proceeds to attach the new nucleotides together.
match the enzyme to its role in dna replication.
a. dna helicase _____ attaches free nucleotides to complementary bases
b. rna primase _____ tells dna polymerase where to start replication
c. dna polymerase _____ glues new nucleotides together creating the new strand
d. ligase _____ breaks hydrogen bonds holding nitrogen bases together
label each strand as original or new.
a._____
b._____
c._____
d._____

Explanation:

Step1: Determine the order of DNA replication steps

  • First, the hydrogen bond between nitrogen bases is broken and DNA is unzipped by the enzyme helicase.
  • Then, DNA Polymerase attaches free - floating nucleotides to their open complementary base.
  • After that, the enzyme Ligase then proceeds to attach the new nucleotides together.
  • Finally, two new identical semi - conservative strands of DNA are created.

Step2: Match the enzymes to their roles

  • DNA Helicase breaks hydrogen bonds holding nitrogen bases together.
  • RNA Primase tells DNA Polymerase where to start replication.
  • DNA Polymerase attaches free nucleotides to complementary bases.
  • Ligase glues new nucleotides together creating the new strand.

Step3: Label the strands (assuming a standard replication fork diagram where the two original strands are separated and new strands are built off them. For example, if in a replication fork, the two strands that were part of the original double - helix are original, and the ones being synthesized are new. But without seeing the exact diagram for labeling A - D, we assume a general case. If we consider a replication fork with two original strands (let's say the ones that were unzipped first) and two new strands being built)

Answer:

  • Order of DNA replication steps: 4 (Two new identical semi - conservative strands of DNA are created), 2 (DNA Polymerase attaches free floating nucleotides to their open complementary base), 1 (The hydrogen bond between nitrogen bases is broken and DNA is unzipped by the enzyme helicase), 3 (The enzyme Ligase then proceeds to attach the new nucleotides together)
  • Enzyme matching: A. DNA Helicase - breaks hydrogen bonds holding nitrogen bases together; B. RNA Primase - tells DNA Polymerase where to start replication; C. DNA Polymerase - attaches free nucleotides to complementary bases; D. Ligase - glues new nucleotides together creating the new strand
  • Strand labeling (assuming a simple replication fork with two original and two new strands): A. Original; B. New; C. Original; D. New (This is a very general assumption. If the diagram has a different configuration, the labels may change accordingly)